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Название: First Observation of Quantum Diffusion in Non-Cubic Metal: Deuterium Diffusion in In
Авторы: Vykhodets, V.
Nefedova, O.
Kurennykh, T.
Vykhodets, E.
Дата публикации: 2023
Издатель: MDPI
Библиографическое описание: Vykhodets, V, Nefedova, O, Kurennykh, T & Vykhodets, E 2023, 'First Observation of Quantum Diffusion in Non-Cubic Metal: Deuterium Diffusion in In', Metals, Том. 13, № 2, 394. https://doi.org/10.3390/met13020394
Vykhodets, V., Nefedova, O., Kurennykh, T., & Vykhodets, E. (2023). First Observation of Quantum Diffusion in Non-Cubic Metal: Deuterium Diffusion in In. Metals, 13(2), [394]. https://doi.org/10.3390/met13020394
Аннотация: Diffusion of deuterium in indium is studied herein. In the temperature range 200–350 K, mass transfer is controlled predominantly by the mechanism of overbarrier atomic jumps; at temperatures from 80 to 120 K, by tunneling; whereas in the range from 120 to 200 K, there takes place a gradual transition from one migration mechanism to the other. These results are of fundamental significance since it is shown for the first time that quantum diffusion can be observed in a metal with a crystal lattice other than the body centered cubic one. Conditions are specified that are necessary for the observation of quantum diffusion of hydrogen: low values of Debye temperature, density of atomic packing in the lattice, and distance between the nearest equilibrium positions of hydrogen atoms. Moreover, data on the influence of point defects on hydrogen tunneling in solids are gained for the first time as well. The quantum diffusion coefficient is twice as high in the sample with enhanced vacancy concentration. © 2023 by the authors.
Ключевые слова: CLASSICAL DIFFUSION
CRYSTAL LATTICE
DEBYE TEMPERATURE
HYDROGEN
NUCLEAR REACTION ANALYSIS
TUNNELING
URI: http://elar.urfu.ru/handle/10995/130253
Условия доступа: info:eu-repo/semantics/openAccess
cc-by
Текст лицензии: https://creativecommons.org/licenses/by/4.0/
Идентификатор SCOPUS: 85149240264
Идентификатор PURE: 36090290
ISSN: 2075-4701
DOI: 10.3390/met13020394
Сведения о поддержке: Ministry of Education and Science of the Russian Federation, Minobrnauka: АААА-А19-119012990095-0
The research was carried out within the state assignment of Ministry of Science and Higher Education of the Russian Federation (theme “Function” No. АААА-А19-119012990095-0).
Располагается в коллекциях:Научные публикации ученых УрФУ, проиндексированные в SCOPUS и WoS CC

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